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Improved image quality in pinhole SPECT by accurate modeling of the point spread function in low magnification systems

机译:通过对低放大倍率系统中的点扩散函数进行精确建模,改善了针孔SPECT中的图像质量

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摘要

It is well-known that in pinhole SPECT (single-photon-emission computed tomography), iterative reconstruction methods including accurate estimations of the system response matrix can lead to submillimeter spatial resolution. There are two different methods for obtaining the system response matrix: those that model the system analytically using an approach including an experimental characterization of the detector response, and those that make use of Monte Carlo simulations. Methods based on analytical approaches are faster and handle the statistical noise better than those based on Monte Carlo simulations, but they require tedious experimental measurements of the detector response. One suggested approach for avoiding an experimental characterization, circumventing the problem of statistical noise introduced by Monte Carlo simulations, is to perform an analytical computation of the system response matrix combined with a Monte Carlo characterization of the detector response. Our findings showed that this approach can achieve high spatial resolution similar to that obtained when the system response matrix computation includes an experimental characterization. Furthermore, we have shown that using simulated detector responses has the advantage of yielding a precise estimate of the shift between the point of entry of the photon beam into the detector and the point of interaction inside the detector. Considering this, it was possible to slightly improve the spatial resolution in the edge of the field of view.
机译:众所周知,在针孔SPECT(单光子发射计算机断层扫描)中,包括对系统响应矩阵的准确估计在内的迭代重建方法可能会导致亚毫米级的空间分辨率。有两种不同的方法来获取系统响应矩阵:一种是使用包括检测器响应的实验表征在内的方法对系统进行分析建模的方法,另一种是使用蒙特卡洛模拟方法的方法。与基于蒙特卡洛模拟的方法相比,基于分析方法的方法速度更快,并且统计噪声处理效果更好,但是它们需要对探测器响应进行繁琐的实验测量。避免实验表征的一种建议方法是避免由蒙特卡洛模拟引入的统计噪声问题,是对系统响应矩阵进行分析计算,并结合检测器响应的蒙特卡洛表征。我们的发现表明,该方法可以实现与系统响应矩阵计算包括实验特性时获得的空间分辨率相似的高空间分辨率。此外,我们已经表明,使用模拟的检测器响应具有对光子束进入检测器的入射点与检测器内部的相互作用点之间的偏移进行精确估计的优势。考虑到这一点,可以稍微提高视野边缘的空间分辨率。

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